2004
DOI: 10.1016/j.apcata.2004.01.014
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Preparation of catalysts from microemulsions and their applications in heterogeneous catalysis

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Cited by 336 publications
(154 citation statements)
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“…Another widespread technique for preparation of monodispersed spherical nanoparticles with a controlled size for catalytic applications is a microemulsion (ME) technique (37,(55)(56)(57). Water-in-oil (reverse) ME have been generally used for the synthesis of a variety of ultrafine metal particles (55) but there are also some examples of metal nanoparticle formation in normal microemulsions (oil-in-water) (58).…”
Section: Microemulsion and Micellar Nanoreactorsmentioning
confidence: 99%
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“…Another widespread technique for preparation of monodispersed spherical nanoparticles with a controlled size for catalytic applications is a microemulsion (ME) technique (37,(55)(56)(57). Water-in-oil (reverse) ME have been generally used for the synthesis of a variety of ultrafine metal particles (55) but there are also some examples of metal nanoparticle formation in normal microemulsions (oil-in-water) (58).…”
Section: Microemulsion and Micellar Nanoreactorsmentioning
confidence: 99%
“…Water-in-oil (reverse) ME have been generally used for the synthesis of a variety of ultrafine metal particles (55) but there are also some examples of metal nanoparticle formation in normal microemulsions (oil-in-water) (58). The main advantage of ME as spatially confined nanoreactors of 5-100 nm size is their one-pot fabrication without sophisticated, time-consuming synthetic steps (4).…”
Section: Microemulsion and Micellar Nanoreactorsmentioning
confidence: 99%
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“…The highest activity in 1-butyne hydrogenation was observed with Pd dispersions < 20% (Boitiaux et al, 1983). To achieve Pd nanoparticles monodispersion on ACF support, we prepared Pd/ACF catalysts (Semagina et al, 2006) with monodispersed particles of ∼ 8 nm diameter via a modified reverse microemulsion technique (Eriksson et al, 2004). The present paper reports on the kinetics of 1-hexyne liquid phase hydrogenation over the novel microemulsion-derived Pd/ACF catalysts.…”
Section: Introductionmentioning
confidence: 99%